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Nonlinear finite element analysis of shape memory alloy (SMA) wire reinforced hybrid laminate composite shells

机译:形状记忆合金丝增强混杂层合复合材料壳体的非线性有限元分析

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摘要

This study introduces a non-linear finite element analysis approach to the procedure of modeling hybrid laminate composite shells with embedded shape memory alloy (SMA) wire subjected to coupled structural and thermal loading. Numerical analyses of SMA wire reinforced composite laminates were carried out by synergizing the non-linear laminate shell element with Brison's model of the SMA constitutive law. To verify the proposed procedure, the present illustrative applications involve rectangular laminated panels clamped along one side. Analysis results were compared with corresponding experimental results from a prior study. Several test cases that depend on the volume fraction of SMA, temperature, and ply angles are presented to illustrate the highly entangled thermo-mechanical behavior of shape memory alloy hybrid composites (SMAHCs). The results of the numerical analysis show the ability of the suggested procedure to compute the thermo-mechanical behavior of a SMAHC in accordance with the SMA's internal phase transformations induced by stress and temperature variation and demonstrate very good agreement with experimental results.
机译:这项研究引入了非线性有限元分析方法,该方法对带有嵌入的形状记忆合金(SMA)线的混合层合复合材料壳进行结构和热载荷耦合建模。通过将非线性层合壳单元与SMA本构律的Brison模型协同作用,对SMA线增强复合材料层合板进行了数值分析。为了验证所提出的程序,本说明性应用包括沿一侧夹紧的矩形层压板。将分析结果与先前研究的相应实验结果进行比较。提出了几种取决于SMA体积分数,温度和帘布层角度的测试案例,以说明形状记忆合金混合复合材料(SMAHCs)的高度纠缠的热机械行为。数值分析结果表明,所建议的方法具有根据应力和温度变化引起的SMA内部相变来计算SMAHC的热机械行为的能力,并与实验结果非常吻合。

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